혼합응집제에 의한 자연유기물질 제거에 미치는 영향 인자

Influencing Factors on NOM Removal using Blended Coagulants

  • 명복태 (건국대학교 환경공학과) ;
  • 우달식 ((재)한국계면공학연구소 수질환경연구부) ;
  • 최종헌 ((재)한국계면공학연구소 수질환경연구부) ;
  • 문철훈 (건국대학교 환경공학과) ;
  • 이윤진 (건국대학교 환경공학과) ;
  • 조영태 (충청대학 환경·화공학부) ;
  • 조관형 (청운대학교 토목환경공학과) ;
  • 남상호 (건국대학교 환경공학과)
  • 발행 : 2001.09.01

초록

This study was carried out to investigate the major factors for the removal of NOMs (Natural Organic Matters) by alum ferric chloride and blended coagulants that consisted of alum and ferric chloride. Investigated factors were pH, the dosage of coagulant, alkalinity, hardness and bloc strength. The particle size contained in the test water came from the Han River was also measured. DOC(Dissolved Organic Carbon) removal at pH 6 was two to three times higher than at pH 8.5. The blended coagulant showed 9 to 10 percent higher DOC removal efficiency and 2 to 4 percent higher turbidity under the same condition. Alkalinity consumption of alum, ferric chloride and blended coagulant was 81%, 90% and 86% of theoretical value, respectively. The limit concentration of alkalinity to avoid pin floe was 10 mg $CaCO_3/L$ when alum was used. Hardness had no apparent effect on coagulation. The residual turbidity and $UV_{254}$ showed a tendency of increasing with floc strength($sec^{-1}$) increase. The order of floe strength was the following; alum >blended coagulant > ferric chloride. The particle counter test showed 89 percent of the small particle size(SPS, $1~5{\;}{\mu}textrm{m}$) and 11 percent of the medium to large particle size(M.LPS, $5~125{\;}{\mu}textrm{m}$). At PH7.85, the particle removal efficiencies of SPS($1~5{\;}{\mu}textrm{m}$) and M.LPS($5~125{\;}{\mu}textrm{m}$) in the coagulation process were 81% and 95%, respectively.

키워드

참고문헌

  1. Organic geochemistry of natural water, Durdrecht Thurman, E.N.
  2. Humic substance in the environment Schenitzer, M.;Kahn, S.U.
  3. J. AWWA v.88 no.9 Improving GAC performance by optimized coagulation Hooper, S.M.
  4. J. AWWA v.87 no.1 Enhanced coagulation-its effect on NOM removal and chemical costs Crozes, G.;White, P.;Marshall, M.
  5. 대한환경공학회지 v.22 no.7 정수공정별천연유기물질의 특성 변화 황정은;강임석;김승현;윤조희
  6. J. AWWA v.86 no.5 Optimization of partivaulate removal under enhanced coagulation condition Mark, M.;John, M.;Gail, C.
  7. Wat. Res. v.29 no.10 PAC activity vs by-product precursors in water disinfection Sandrucci, P.;Merlo, G.;Green, G.;Meucci, L.
  8. J. AWWA v.88 no.3 Coagulation-its effects on organic matter Dennett, K.E.;Amirtharajah, A.;Moran, T.F.;Gould, J.P.
  9. 대한상하수도학회지 v.9 no.3 응집이론(Ⅰ)-수리동력학과 입자간의 작용력을 오려한 응집모델 한무영
  10. 대한상하수도학회지 v.9 no.4 응집이론(Ⅱ)-플록형성에서의 G값의 의의 한무영
  11. 대한상하수도학회 v.8 no.2 응집교반강도 및 침전지월류부하율 개선을 통한 기존 정수장의 정수처리 능력 향상 최계운;곽창호;김량
  12. 한국수처리기술연구회지 v.5 no.1 알루미늄계 수처리 응집제 적용시 부유물질 응집거동에 관한 연구 김동수;조경숙;이종목
  13. 상수처리시 PACI 응집제의 특성 및 기타Al(Ⅲ)계와의 응집특성 비교 황보봉형;한승우;류동춘;류재익;강임석
  14. Water Clarification processes practical design and evaluation Hudson, H.E.
  15. 한국환경위생학회지 v.27 no.2 응집공정에서 혼합응집제 주입에 의한 자연유기물질제거 명복태;우달식;최종헌;이윤진;남상호
  16. Wat. Sci. Tech. v.27 no.11 Coagulation in drinking water treatment-particles, organic and coagulants Edzwald, J.K.
  17. Water Quality and Treatment(4th Edition) Coagulation processes-destabilization, mixing and flocculation Amirtharjah, A.;o'Melia, C.R.